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基于离子液体的路线,在微波辐射的辅助下合成具有多色上转换发光性能的球形 NaYF4 纳米晶簇。

Ionic liquid-based route to spherical NaYF4 nanoclusters with the assistance of microwave radiation and their multicolor upconversion luminescence.

机构信息

Beijing National Laboratory for Molecular Sciences, Peking University, Beijing 100871, PR China.

出版信息

Langmuir. 2010 Jun 1;26(11):8797-803. doi: 10.1021/la904545a.

Abstract

An ionic liquid (IL) (1-butyl-3-methylimidazolium tetrafluoroborate)-based route was introduced into the synthesis of novel spherical NaYF(4) nanoclusters with the assistance of a microwave-accelerated reaction system. X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), high-resolution TEM (HRTEM), selected area electron diffraction (SAED), energy-dispersive X-ray spectroscopy (EDS) and upconversion (UC) luminescence spectroscopy were used to characterize the obtained products. Interestingly, these spherical NaYF(4) nanoclusters with diameters ranging from 200 to 430 nm are formed by the self-assembly of small nanoparticles. The diameters of the nanoclusters could be easily tuned just by changing the amounts of the precursors. By conducting the control experiments with different ILs or precursors, it is proven that the ILs have played key roles, such as the solvents for the reaction, the absorbents of microwave irradiation, and the major fluorine sources for the formation of the NaYF(4) nanocrystals. The UC luminescence properties of the Ln(3+) codoped NaYF(4) were measured, and the results indicate that the nanoclusters obtained in BmimBF(4) exhibit excellent UC properties. Since this IL-based and microwave-accelerated procedure is efficient and environmentally benign, we believe that this method may have some potential applications in the synthesis of other nanomaterials.

摘要

一种离子液体(IL)(1-丁基-3-甲基咪唑四氟硼酸盐)-基于路线被引入到新型球形 NaYF(4)纳米簇的合成中,该方法在微波加速反应系统的辅助下进行。使用 X 射线衍射(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、高分辨率 TEM(HRTEM)、选区电子衍射(SAED)、能谱(EDS)和上转换(UC)发光光谱对所得到的产物进行了表征。有趣的是,这些直径在 200 到 430nm 之间的球形 NaYF(4)纳米簇是由小纳米颗粒的自组装形成的。通过改变前体的量,很容易调整纳米簇的直径。通过用不同的 IL 或前体进行控制实验,证明了 IL 在反应中起着关键作用,如反应的溶剂、微波辐射的吸收剂以及 NaYF(4)纳米晶体形成的主要氟源。测量了 Ln(3+)共掺杂 NaYF(4)的上转换发光性能,结果表明在 BmimBF(4)中得到的纳米簇表现出优异的上转换发光性能。由于这种基于 IL 和微波加速的方法高效且环保,我们相信该方法可能在其他纳米材料的合成中有一定的应用潜力。

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